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Optimizing carbon storage and biodiversity protection in tropical agricultural landscapes

机译:优化热带农业景观中的碳储存和生物多样性保护

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With the rapidly expanding ecological footprint of agriculture, the design of farmed landscapes will play an increasingly important role for both carbon storage and biodiversity protection. Carbon and biodiversity can be enhanced by integrating natural habitats into agricultural lands, but a key question is whether benefits are maximized by including many small features throughout the landscape ('land-sharing' agriculture) or a few large contiguous blocks alongside intensive farmland ('land-sparing' agriculture). In this study, we are the first to integrate carbon storage alongside multi-taxa biodiversity assessments to compare land-sparing and land-sharing frameworks. We do so by sampling carbon stocks and biodiversity (birds and dung beetles) in landscapes containing agriculture and forest within the Colombian Choco-Andes, a zone of high global conservation priority. We show that woodland fragments embedded within a matrix of cattle pasture hold less carbon per unit area than contiguous primary or advanced secondary forests (>15 years). Farmland sites also support less diverse bird and dung beetle communities than contiguous forests, even when farmland retains high levels of woodland habitat cover. Landscape simulations based on these data suggest that land-sparing strategies would be more beneficial for both carbon storage and biodiversity than land-sharing strategies across a range of production levels. Biodiversity benefits of land-sparing are predicted to be similar whether spared lands protect primary or advanced secondary forests, owing to the close similarity of bird and dung beetle communities between the two forest classes. Land-sparing schemes that encourage the protection and regeneration of natural forest blocks thus provide a synergy between carbon and biodiversity conservation, and represent a promising strategy for reducing the negative impacts of agriculture on tropical ecosystems. However, further studies examining a wider range of ecosystem services will be necessary to fully understand the links between land-allocation strategies and long-term ecosystem service provision
机译:随着农业生态足迹的迅速扩大,农场景观的设计将在碳储存和生物多样性保护方面发挥越来越重要的作用。通过将自然栖息地整合到农田中可以提高碳和生物多样性,但是一个关键的问题是,通过在整个景观中包含许多小特征(“共享土地的农业”)还是在集约化耕地旁边包含几个大的连续块(​​“节约土地的农业)。在这项研究中,我们是第一个将碳存储与多类生物多样性评估相结合的国家,以比较土地节约和土地共享框架。为此,我们在哥伦比亚巧克力安第斯山脉(这是全球高度重视的保护区)内包含农业和森林的景观中采样碳储量和生物多样性(鸟类和ung甲虫)的方法。我们显示,与连续的原始或高级次生森林(> 15年)相比,嵌入牧场矩阵中的林地碎片每单位面积拥有更少的碳。即使农田保留了高水平的林地栖息地,农田也支持的鸟类和粪甲虫群落比连续森林少。根据这些数据进行的景观模拟表明,在一系列生产水平上,土地节约策略对碳储存和生物多样性都将更加有利。由于这两个森林类别之间的鸟类和ung甲虫群落非常相似,因此无论用备用土地保护原始森林还是高级次生森林,预计保留土地的生物多样性收益将相似。鼓励自然林地保护和更新的土地节约计划因此在碳和生物多样性保护之间提供了协同增效作用,并且是减少农业对热带生态系统负面影响的有前途的战略。但是,有必要进一步研究更广泛的生态系统服务,以充分了解土地分配战略与长期生态系统服务之间的联系。

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